Q.56 Cystein rich peptide involved in pollen tube attraction in the micropylar region of ovule in Arabidopsis. LeSTIG 1 LUREs GRP17 SCAs

Q.56 Cystein rich peptide involved in pollen tube attraction in the micropylar region of ovule in Arabidopsis.

  1. LeSTIG 1
  2. LUREs
  3. GRP17
  4. SCAs

    LUREs is the correct answer.

    LUREs (AtLURE1 peptides) are cysteine-rich defensin-like peptides secreted from synergid cells in the Arabidopsis ovule’s micropylar region, specifically attracting conspecific pollen tubes for precise guidance to the egg cell during double fertilization.

    Option Explanations

    These options test knowledge of female gametophytic signals in pollen tube attraction, a key plant reproduction mechanism studied via semi-in-vivo assays and mutants like myb98.

    • LeSTIG 1: Incorrect. This is a tomato (Solanum lycopersicum) stigma-specific cysteine-rich peptide involved in early pollen tube guidance on the stigma, not ovular micropyle attraction in Arabidopsis.

    • LUREsCorrect. AtLURE1.1–1.5 (CRP810_1 family) are synergid-expressed, six-cysteine defensin-like peptides that diffuse to the micropyle, bind pollen PRK6 receptors, and selectively accelerate conspecific pollen tubes, promoting reproductive isolation.

    • GRP17: Incorrect. Glycine-rich protein 17 functions in Arabidopsis pollen wall patterning and exine formation, not ovule-based pollen tube attraction.

    • SCAs: Incorrect. Solanaceous cysteines (SCAs) are pollen tube chemotropically attractive peptides from tobacco/Nicotiana synergids, but not the primary micropylar signals in Arabidopsis (LUREs orthologs exist but are distinct).

    Cysteine rich peptide pollen tube attraction micropylar Arabidopsis questions target LUREs in NEET/GATE Botany, highlighting synergid signals for species-specific fertilization.

    Pollen Tube Guidance Stages

    Pollen tubes grow chemotropically: stigma (LeSTIG/SCAs), style (CRP810), ovule micropyle (LUREs). Synergids rupture post-attraction, releasing FERONIA-regulated signals.

    LUREs Mechanism

    AtLURE1 peptides (8 cysteines typical of DEFLs) evolve rapidly for species specificity; knockout reduces conspecific preference but not intraspecies fertility (XIUQIU peptides compensate).

    Exam Relevance

    Distinguish: LUREs (Brassicaceae ovule), EA1 (maize synergid), NPA1 (non-defensin alternative). Mutants like lore1 confirm LUREs’ role.

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